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Gene characterization and molecular pathway analysis of reverse thermosensitive genic male sterility in eggplant (Solanum melongena L.)

机译:茄子(Solanum Melongena L.)逆热敏基因雄性不育的基因表征及分子途径分析

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The naturally occurring mutant eggplant line 05ms was identified with reverse thermosensitive genic male sterility (rTGMS), but its temperature-responsive fertility mechanisms remain largely unknown. Here, we studied the flower morphology, anther cellular structure, and genome-wide gene expression of this rTGMS line. Candidate genes for thermosensitive male sterility during the microspore development of 05ms and the temperature-insensitive line S63 under low-temperature (LT) and high-temperature (HT) conditions were identified. Under LT, tapetum cells were vacuolated and had delayed disintegration in 05ms. RNA-seq analysis indicated that DEGs were enriched in the KEGG pathways 'plant hormone signal transduction', 'starch and sucrose metabolism', and 'phenylpropanoid biosynthesis'. We identified two genes, 4CLL1 (Sme2.5_00368.1_g00010.1) and CKI1 (Sme2.5_10056.1_g00002.1), which could potentially regulate eggplant anther development and may be candidate genes for rTGMS. Finally, we propose a working model of anther abortion for rTGMS in eggplant. CKI1 responds to LT stress and causes expression changes in genes related to anther development, such as 4CLL1, and the cellular structure of the tapetum becomes abnormal, causing male sterility. The findings of this study explain the underlying molecular mechanisms of male sterility in eggplant rTGMS lines.? The Author(s) 2019.
机译:用反向热敏遗传雄性不育(RTGM)鉴定天然存在的突变蛋白茄子线05ms,但其温度响应性肥机制仍然很大程度上。在这里,我们研究了这种RTGMS系列的花卉形态,花药结构和基因组基因表达。鉴定了在低温(LT)和高温(HT)条件下为05ms和温度不敏感线S63的微孔发育期间热敏雄性不耐性的候选基因。在LT中,绦虫细胞被真空溶解并在05ms中延迟崩解。 RNA-SEQ分析表明,DEG富含Kegg途径'植物激素信号转导','淀粉和蔗糖代谢'和'苯丙烷化生物合成'。我们确定了两个基因,4CLL1(SME2.5_00368.1_G00010.1)和CKI1(SME2.5_10056.1_G00002.1),其可能会调节茄子花药的发展,并且可能是RTGMS的候选基因。最后,我们提出了茄子中的RTGM含糊物质的工作模型。 CKI1响应LT应激并导致表达与花药开发相关的基因的变化,例如4Cll1,Tapetum的细胞结构变得异常,导致雄性不育。本研究的结果解释了茄子RTGMS系中雄性不育的潜在分子机制。?作者2019年。

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